Lau S S, Monks T J
Division of Pharmacology and Toxicology, College of Pharmacy, University of Texas, Austin 78712.
Life Sci. 1988;42(13):1259-69. doi: 10.1016/0024-3205(88)90219-6.
The metabolism and toxicity of bromobenzene has been investigated for well over one hundred years. The urinary excretion of mercapturic acids was first reported in 1879, in animals treated with bromobenzene. Bromobenzene has since proven to be a valuable tool in efforts to unravel the complexities involved in chemical- induced toxicities. For example, the importance of metabolic activation via the cytochrome(s) P-450; the role of glutathione in the detoxification of reactive metabolites; and the toxicological significance of covalent binding, enzyme inactivation and lipid peroxidation have all been illustrated in studies with bromobenzene. Thus, many of the principles involved in chemical-induced toxicity have been exemplified in studies with bromobenzene. These studies have provided substantial insight into the role of chemically reactive metabolites in the genesis of xenobiotic-mediated cytotoxicity.
溴苯的代谢与毒性已被研究了一百多年。1879年首次报道了用溴苯处理的动物尿中硫醇尿酸的排泄情况。此后,溴苯已被证明是揭示化学诱导毒性所涉及的复杂性的一种有价值的工具。例如,通过细胞色素P-450进行代谢活化的重要性;谷胱甘肽在反应性代谢物解毒中的作用;以及共价结合、酶失活和脂质过氧化的毒理学意义,都在溴苯的研究中得到了说明。因此,化学诱导毒性所涉及的许多原理在溴苯的研究中得到了例证。这些研究为化学反应性代谢物在异源生物介导的细胞毒性发生中的作用提供了大量的见解。